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首页> 外文期刊>Chemical Engineering Science >Flow regime identification of two-phase liquid-liquid upflow through vertical pipe
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Flow regime identification of two-phase liquid-liquid upflow through vertical pipe

机译:立管两相液液上流的流态识别

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摘要

The present work has attempted to identify the flow patterns during liquid-liquid two phase flow through a vertical pipe. Dyed kerosene and water have been selected as the test fluids. The measurements have been made for phase velocities varying from 0.05 to 1.5 m/s for both the liquids. The conductivity probe technique has been adopted and three different probe designs have been used to identify the patterns under different flow conditions. A parallel wire type probe traversing the entire cross-section along a diametral plane has indicated the existence of bubbly flow at low phase flow rates and dispersed bubbly flow at high velocities of water. Apart from the visual appearance of the signals, different statistical analysis namely the probability density function and wavelet analysis have been performed for a better appraisal of the flow situation. The information in the PDFs have been quantified by means of the statistical moments. The existence of the core-annular flow at high kerosene and low water velocities has been confirmed from measurements using a different probe design. The intermediate region between the bubbly and annular flow patterns is characterized by a random distribution of the two liquids with continually changing interface between them. This has been named as the chum turbulent flow pattern. The information thus obtained has been represented in the form of a flow pattern map. (c) 2005 Elsevier Ltd. All rights reserved.
机译:目前的工作试图确定液-液两相通过垂直管的流动过程。已选择染色的煤油和水作为测试液。已经对两种液体的相速度从0.05到1.5 m / s进行了测量。已采用电导率探针技术,并且已使用三种不同的探针设计来识别不同流量条件下的模式。平行的线型探针沿直径平面横穿整个横截面,表明在低相流速下存在气泡流,而在高水速下存在分散的气泡流。除了信号的视觉外观外,还进行了不同的统计分析,即概率密度函数和小波分析,以更好地评估流动情况。 PDF中的信息已通过统计时刻进行了量化。通过使用不同的探头设计进行的测量已经确认了在高煤油和低水速下岩心环流的存在。气泡和环形流动模式之间的中间区域的特征在于两种液体的随机分布,并且它们之间的界面不断变化。这被称为密流湍流模式。这样获得的信息已经以流型图的形式表示。 (c)2005 Elsevier Ltd.保留所有权利。

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